High step-up single switch quadratic modified SEPIC converter for DC microgrid applications

被引:20
|
作者
Maroti, Pandav Kiran [1 ]
Esmaeili, Soroush [2 ]
Iqbal, Atif [1 ]
Meraj, Mohammad [1 ]
机构
[1] Qatar Univ, Dept Elect Engn, Doha, Qatar
[2] Mazandaran Univ Sci & Technol, Dept Elect Engn, Babol, Iran
关键词
distributed power generation; switching convertors; DC-DC power convertors; inductance; photovoltaic power systems; power inductors; power capacitors; diodes; power transformers; DC microgrid applications; SEPIC converter; low-duty ratio; higher voltage gain; high-voltage transformer-based DC-DC converters; output diode; single-ended primary-inductor capacitor DC-DC converter; renewable energy sources; photovoltaic systems; leakage inductances; single switch; discontinuous conduction mode; continuous current mode; voltage; 400; 0; V; DC/DC CONVERTERS; GAIN; INDUCTOR; IMPLEMENTATION;
D O I
10.1049/iet-pel.2020.0147
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
A new non-isolated high-voltage gain single switch quadratic modified single-ended primary-inductor capacitor (SEPIC) DC-DC converter is proposed in this study. The proposed converter consists of a modified SEPIC converter along with a boosting module to obtain a high-voltage gain at a low-duty ratio. It has all advantages of the SEPIC converter such as continuous input current, which makes it applicable for renewable energy sources such as photovoltaic systems. The proposed converter is able to attain a higher voltage gain in comparison with similar previous transformer-less DC-DC converters. Also, unlike high-voltage transformer-based DC-DC converters, it does not suffer from leakage inductances. Also, the proposed converter presents low-voltage stress across the switch and output diode. The proposed converter is controlled through a single switch and there is no limitation for a range of duty ratios. The voltage gain analysis of the proposed converter is done in continuous conduction mode and discontinuous conduction mode, also comparative analysis is done with the existing topologies with similar features. The proposed converter is designed for 400 V DC microgrid applications. The theoretical analysis of the proposed converter is verified by the experimental investigation in the laboratory.
引用
收藏
页码:3717 / 3726
页数:10
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